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具有可控层堆积的混合连接体手性二维共价有机框架用于电化学不对称催化

Mixed-Linker Chiral 2D Covalent Organic Frameworks with Controlled Layer Stacking for Electrochemical Asymmetric Catalysis.

作者信息

Yuan Chen, Fu Shiguo, Kang Xing, Cheng Cheng, Jiang Chao, Liu Yan, Cui Yong

机构信息

School of Chemistry and Chemical Engineering, Frontiers Science Center for Transformative Molecules and State Key Laboratory of Metal Matrix Composites, Shanghai 200240, P. R. China.

Analytical & Testing Centre, Sichuan University, Chengdu 610064, P. R. China.

出版信息

J Am Chem Soc. 2024 Jan 10;146(1):635-645. doi: 10.1021/jacs.3c10478. Epub 2023 Dec 26.

Abstract

Covalent organic frameworks (COFs) have undergone extensive research as heterogeneous catalysts for a wide range of significant reactions, but they have not yet been investigated in the realm of electrochemical asymmetric catalysis, despite their recognition as an economical and sustainable strategy for producing enantiopure compounds. Here, we report a mixed-linker strategy to design multicomponent two-dimensional (2D) chiral COFs with tunable layer stacking for highly enantioselective electrocatalysis. By crystallizing mixtures of triamines with and without the MacMillan imidazolidinone catalyst or aryl substituent (ethyl and isopropyl) and a dialdehyde derivative of thieno-[3,2-]thiophene, we synthesized and structurally characterized a series of three-component homochiral 2D COFs featuring either AA or ABC stacking. The stacking modes that can be synthetically controlled through steric tuning using different aryl substituents affect their chemical stability and electrochemical performance. With the MacMillan catalyst periodically appended on their channels, all three COFs with conductive thiophene moieties can be highly enantioselective and recyclable electrocatalysts for the asymmetric α-arylation of aldehydes, affording alkylated anilines with up to 97% enantiomeric excess by an anodic oxidation/organocatalytic protocol. Presumably due to their higher charge transfer ability, the ABC stacking COFs exhibit improved reactivity compared to the AA stacking analogue. This work therefore advances COFs as electrocatalysts for asymmetric catalysis and may facilitate the design of more redox-active crystalline organic polymers for electrochemical enantioselective processes.

摘要

共价有机框架(COFs)作为用于广泛重要反应的多相催化剂已经经历了广泛的研究,但尽管它们被认为是生产对映体纯化合物的经济且可持续的策略,但尚未在电化学不对称催化领域得到研究。在此,我们报道了一种混合连接体策略,用于设计具有可调层堆积的多组分二维(2D)手性COFs,以实现高度对映选择性电催化。通过使含有和不含有麦克米伦咪唑烷酮催化剂或芳基取代基(乙基和异丙基)的三胺混合物与噻吩并[3,2-]噻吩的二醛衍生物结晶,我们合成并对一系列具有AA或ABC堆积的三组分同手性2D COFs进行了结构表征。可以通过使用不同芳基取代基进行空间调节来合成控制的堆积模式会影响它们的化学稳定性和电化学性能。由于麦克米伦催化剂周期性地附着在它们的通道上,所有三种具有导电噻吩部分的COFs都可以成为用于醛的不对称α-芳基化的高度对映选择性和可回收的电催化剂,通过阳极氧化/有机催化方案提供对映体过量高达97%的烷基化苯胺。据推测,由于它们具有更高的电荷转移能力,ABC堆积的COFs与AA堆积的类似物相比表现出更高的反应活性。因此,这项工作推动了COFs作为不对称催化的电催化剂的发展,并可能促进设计更多用于电化学对映选择性过程的氧化还原活性结晶有机聚合物。

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